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Interference mitigation in D2D communication underlaying LTE-A network

机译:支持LTE-A网络的D2D通信中的干扰缓解

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摘要

The mobile data traffic has risen exponentially in recent days due to the emergence of data intensive applications, such as online gaming and video sharing. It is driving the telecommunication industry as well as the research community to come up with new paradigms that will support such high data rate requirements within the existing wireless access network, in an efficient and effective manner. To respond to this challenge, device-to-device (D2D) communication in cellular networks is viewed as a promising solution, which is expected to operate, either within the coverage area of the existing eNB and under the same cellular spectrum (in-band) or separate spectrum (out-band). D2D provides the opportunity for users located in close proximity of each other to communicate directly, without traversing data traffic through the eNB. It results in several transmission gains, such as improved throughput, energy gain, hop gain, and reuse gain. However, integration of D2D communication in cellular systems at the same time introduces new technical challenges that need to be addressed. Containment of the interference among D2D nodes and cellular users is one of the major problems. D2D transmission radiates in all directions, generating undesirable interference to primary cellular users and other D2D users sharing the same radio resources resulting in severe performance degradation. Efficient interference mitigation schemes are a principal requirement in order to optimize the system performance. This paper presents a comprehensive review of the existing interference mitigation schemes present in the open literature. Based on the subjective and objective analysis of the work available to date, it is also envisaged that adopting a multi-antenna beamforming mechanism with power control, such that the transmit power is maximized toward the direction of the intended D2D receiver node and limited in all other directions will minimize the interference in the network. This could maximize the sum throughput and hence, guarantees the reliability of both the D2D and cellular connections.
机译:由于诸如在线游戏和视频共享之类的数据密集型应用程序的出现,近来移动数据流量呈指数增长。它正在推动电信行业以及研究界提出新的范例,这些范例将以有效和有效的方式在现有的无线接入网络中支持如此高的数据速率要求。为了应对这一挑战,蜂窝网络中的设备到设备(D2D)通信被视为一种有前途的解决方案,有望在现有eNB的覆盖范围内以及相同的蜂窝频谱(带内)下运行)或单独的频谱(带外)。 D2D为彼此紧邻的用户提供了直接通信的机会,而无需遍历eNB的数据流量。它会带来多种传输增益,例如提高的吞吐量,能量增益,跃点增益和重用增益。但是,同时将D2D通信集成到蜂窝系统中会带来需要解决的新技术挑战。遏制D2D节点与蜂窝用户之间的干扰是主要问题之一。 D2D传输在所有方向上辐射,对共享相同无线电资源的主要蜂窝用户和其他D2D用户产生不良干扰,从而导致严重的性能下降。有效的干扰缓解方案是优化系统性能的主要要求。本文对开放文献中存在的现有干扰缓解方案进行了全面回顾。基于对迄今为止可用工作的主观和客观分析,还可以设想采用具有功率控制的多天线波束形成机制,从而使发射功率朝着预期的D2D接收器节点的方向最大化,并且在所有方向上都受到限制其他方向将最大限度地减少对网络的干扰。这可以使总吞吐量最大化,因此可以保证D2D和蜂窝连接的可靠性。

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